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    • 2. 发明专利
    • Exhaust gas treatment device
    • 排气处理装置
    • JP2007327389A
    • 2007-12-20
    • JP2006158419
    • 2006-06-07
    • Chubu Electric Power Co IncMitsubishi Heavy Ind Ltd三菱重工業株式会社中部電力株式会社
    • TOMONAGA NARIYUKITSUNEOKA SUSUMUOKA NOBUKITAKAMURA YUKIHIRO
    • F01N3/08B01D53/94
    • PROBLEM TO BE SOLVED: To provide an exhaust gas treatment device capable of improving the efficiency of a heat engine such as an engine, reducing running costs, and improving denitrating efficiency of NOx contained in exhaust gas. SOLUTION: This device is provided with a catalyst 21 used for adsorbing and reducing nitride oxides contained in exhaust gas delivered from the heat engine 19, an exhaust gas channel 5 introducing exhaust gas to the catalyst 21, a reducing gas channel 9 supplying reducing gas containing at least a reducing agent for reducing nitride oxides to the catalyst 21, and a supply channel 15 supplying at least a part of reducing gas led to flow out from the catalyst 21 to the heat engine 19. It is characterized that the reducing agent is at least a part of fuel burnt in the heat engine 19. COPYRIGHT: (C)2008,JPO&INPIT
    • 解决的问题:提供能够提高发动机等发动机的效率的排气处理装置,降低运行成本,提高废气中所含的NOx的脱硝效率。 解决方案:该装置设置有用于吸附和还原从热机19输送的废气中所含的氮氧化物的催化剂21,将废气引入催化剂21的废气通道5, 还原性气体至少含有用于将氮氧化物还原成催化剂21的还原剂,以及供给至少一部分还原气体的供给通道15,导致从催化剂21流出到热机19.其特征在于, 代理是至少一部分在发动机19中燃烧的燃料。版权所有(C)2008,JPO&INPIT
    • 4. 发明专利
    • Thermoplastic resin material mixed with coal ash and method for producing thermoplastic resin material mixed with coal ash
    • 与煤灰混合的热塑性树脂材料及与煤灰混合的热塑性树脂材料的制造方法
    • JP2006193591A
    • 2006-07-27
    • JP2005005579
    • 2005-01-12
    • Chubu Electric Power Co IncMitsubishi Heavy Ind Ltd三菱重工業株式会社中部電力株式会社
    • YOSHIYAMA TAKASHIKATAGIRI AKIONODA HIDETOMOTAKAMURA YUKIHIROTATANI ATSUSHIHAMADA TAKAYOSHISUGIOKA TADAOTAKEUCHI NAOKAZU
    • C08L101/00C08K9/04C08L67/00C08L77/00
    • PROBLEM TO BE SOLVED: To obtain a thermoplastic resin material mixed with coal ash, which is composed of a mixture comprising a readily hydrolyzable thermoplastic resin useful in a PET bottle, etc., coal ash generated from a coal-fired power plant and a water-impermeable film material and is moldable by molds at a low temperature.
      SOLUTION: The facilities for producing a thermoplastic resin material mixed with coal ash consist of a tumbler 6 that coats the surface of coal ash 1 with a water-impermeable film material 2 to give coated coal ash 3 and mixing the coated coal ash with a readily hydrolyzable thermoplastic resin 4 to give a thermoplastic resin composition 5 mixed with coal ash, an extruder 7 for heating/kneading the obtained thermoplastic resin composition 5 mixed with coal ash to give a thermoplastic resin material 8 mixed with coal ash, a cooling water tank 9 for cooling the obtained thermoplastic resin material 8 mixed with coal ash by transferring the material to cooling water 9a and a cutter 11 for successively cutting the cooled thermoplastic resin material 8 mixed with coal ash in fixed pellet length.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 待解决的问题:为了获得由包含易于水解的PET瓶等易溶于水的热塑性树脂的混合物的煤灰混合的热塑性树脂材料,从燃煤发电厂产生的煤灰 和不透水的薄膜材料,并且可通过模具在低温下成型。 解决方案:用于生产与煤灰混合的热塑性树脂材料的设备包括用不透水薄膜材料2涂覆煤灰1的表面的转杯6,以得到涂覆的煤灰3,并将涂覆的煤灰 用易水解的热塑性树脂4,得到与煤灰混合的热塑性树脂组合物5,用于加热/捏合与煤灰混合的所得热塑性树脂组合物5的挤出机7,得到与煤灰混合的热塑性树脂材料8,冷却 水箱9,用于通过将材料转移到冷却水9a中冷却所获得的与煤灰混合的热塑性树脂材料8;以及刀具11,用于连续切割以固定颗粒长度与煤灰混合的冷却的热塑性树脂材料8。 版权所有(C)2006,JPO&NCIPI
    • 6. 发明专利
    • Exhaust gas sampling apparatus for measuring mercury concentration
    • 用于测量汞浓度的排气采样设备
    • JP2004301678A
    • 2004-10-28
    • JP2003095234
    • 2003-03-31
    • Babcock Hitachi KkChubu Electric Power Co Incバブコック日立株式会社中部電力株式会社
    • NODA HIDETOMOTAKAMURA YUKIHIRONARITA SABUROYOSHIKAWA HIROBUMIISHIZAKA HIROSHITAKAMOTO NARUHITONAKAMOTO TAKANORITEI GAKURYU
    • G01N1/02G01N1/22G01N33/20
    • PROBLEM TO BE SOLVED: To provide an exhaust gas sampling apparatus for accurately sampling a solid particle containing exhaust gas and accurately measuring the concentration of mercury contained in the exhaust gas in each mode.
      SOLUTION: The exhaust gas sampling apparatus uses a gas collection pipe 4, collects the solid particle containing exhaust gas A passing through a duct 9 and supplies it to a mercury concentration measurement apparatus for measuring the concentration of the mercury contained in the exhaust gas A, in each mode. The exhaust gas sampling apparatus has the gas collection pipe 4, a dust collection filter 2 provided at a tip of the gas collection pipe 4 and a gas suction pipe 11 coupled to the upstream side of the duct collection filter 2, sucking the solid particle containing exhaust gas A and introducing it into the dust collection filter 2. A gas outlet opening 12 is located at an end which is opposite to a gas inlet of the gas suction pipe 11, and is blocked. A gas outlet opening 13 is provided in a part other than a blocked part, e.g. the outer circumference of a side face.
      COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:提供一种用于在每种模式下精确地取样含有废气的固体颗粒并精确测量废气中含有的汞的浓度的排气采样装置。 解决方案:排气采样装置使用气体收集管4,收集通过管道9的含有废气A的固体颗粒,并将其供应给汞浓度测量装置,以测量排放中所含的汞的浓度 气体A,在每种模式。 排气采样装置具有气体收集管4,设置在集气管4的前端的集尘过滤器2和与管道收集过滤器2的上游侧连接的吸气管11,吸入含有 废气A并将其引入到集尘过滤器2中。气体出口12位于与气体吸入管11的气体入口相对的一端,并被阻塞。 气体出口13设置在除堵塞部分以外的部分,例如, 侧面的外周。 版权所有(C)2005,JPO&NCIPI
    • 7. 发明专利
    • Simple method for analyzing arsenic concentration in coal ash
    • 用于分析煤灰中砷酸浓度的简单方法
    • JP2013104848A
    • 2013-05-30
    • JP2011250917
    • 2011-11-16
    • Chubu Electric Power Co Inc中部電力株式会社
    • HIRAO TAKASHITAKAMURA YUKIHIRO
    • G01N23/223G01N27/62G01N33/22
    • PROBLEM TO BE SOLVED: To provide a simple method for analyzing an arsenic concentration in coal ash capable of easily and quickly performing an analysis by a simple operation and providing a favorable correlation with the official method.SOLUTION: The simple analysis method for the arsenic concentration in coal ash includes first creating a calibration curve between arsenic concentrations obtained by a fluorescent X-ray method in which X ray is applied to the coal ash and the intensity of the fluorescent X-ray generated from the coal ashe is measured, and the arsenic concentration obtained by the official method (EPA Method 3051) provided by United States Environmental Protection Agency. Then, the arsenic concentration in the coal ash as an analysis object is analyzed by the fluorescent X-ray method. The arsenic concentration in the coal ash obtained by the official method can be inferred from the analytical value of the arsenic concentration obtained by the fluorescent X-ray method, on the basis of the calibration curve.
    • 要解决的问题:提供一种用于分析煤灰中的砷浓度的简单方法,其能够通过简单的操作容易且快速地进行分析,并与官方方法提供有利的相关性。 解决方案:煤灰中砷浓度的简单分析方法包括首先生成通过荧光X射线法获得的砷浓度之间的校准曲线,其中X射线应用于煤灰和荧光X的强度 测量煤灰产生的砷,并通过美国环境保护局提供的官方方法(EPA方法3051)获得的砷浓度。 然后,通过荧光X射线法分析作为分析对象的煤灰中的砷浓度。 通过正式方法得到的煤灰中砷的浓度可以从荧光X射线法得到的砷浓度的分析值,基于校正曲线推断出来。 版权所有(C)2013,JPO&INPIT
    • 9. 发明专利
    • Windmill arrangement determining device, windmill arrangement determining program, and recording medium
    • WINDMILL安排确定设备,WINDMILL安排确定程序和记录介质
    • JP2010127235A
    • 2010-06-10
    • JP2008304758
    • 2008-11-28
    • Chubu Electric Power Co Inc中部電力株式会社
    • TAKAMURA YUKIHIRO
    • F03D7/00
    • F03D7/048F03D13/30Y02E10/723Y02E10/725
    • PROBLEM TO BE SOLVED: To automatically determine arrangement of windmills optimally from a point of power generation output.
      SOLUTION: This windmill arrangement automatically determining device determines arrangement of windmills, which exist within a construction site, one by one in order by repeating a series of processes including at least a power generation output computing process, a selecting process, a determining process and a renewing process. In the case of selecting the site for the Nth (N>2) windmill, as a selecting process, the site is selected based on a condition wherein an average value of expected power generation output of each windmill from a first one to N-1 one, which is computed by reflecting lowering of the wind velocity in the lee of the Nth windmill to the wind velocity data, exceeds a reference value and wherein the power generation output of the Nth windmill is large.
      COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:从发电输出的角度自动确定风车的布置。 解决方案:该风车装置自动确定装置通过重复一系列过程逐个依次确定存在于施工现场内的风车的布置,该系列过程至少包括发电输出计算处理,选择处理,确定 过程和更新过程。 在选择第N(N> 2)风车的场地的情况下,作为选择处理,基于将每个风车的预期发电输出的平均值从第一到第N-1的条件选择的位置 通过将第N风车的风速降低到风速数据来计算的一个超过参考值,并且其中第N风车的发电输出较大。 版权所有(C)2010,JPO&INPIT